Skip to product information
The Interstellar Medium, Expanding Nebulae and Triggered Star Formation: Theory and Simulations (2016)

The Interstellar Medium, Expanding Nebulae and Triggered Star Formation

$54.99
Shipping calculated at checkout.
  • Authorized Dealer
  • Ships within 1 business day
  • Free 30-Day Returns
  • Secure Checkout via Shopify Payments
Details

"The Interstellar Medium, Expanding Nebulae and Triggered Star Formation" by Thomas G. Bisbas is a mathematics book and learning resource focused on Deep Sky & Solar System. Best for teachers, students, and readers looking for stronger mathematical understanding.

This brief brings together the theoretical aspects of star formation and ionized regions with the most up-to-date simulations and observations. Beginning with the basic theory of star formation, the physics of expanding HII regions is reviewed in detail and a discussion on how a massive star can give birth to tens or hundreds of other stars follows. The theoretical description of star formation is shown in simplified and state-of-the-art numerical simulations, describing in a more clear way how feedback from massive stars can trigger star and planet formation. This is also combined with spectacular images of nebulae taken by talented amateur astronomers. The latter is very likely to stimulate the reader to observe the structure of nebulae from a different point of view, and better understand the associated star formation therein.

Materials + Care

We prioritize quality in selecting the materials for our items, choosing premium fabrics and finishings that ensure durability, comfort, and timeless appeal.

Shipping + Returns

We strive to process and ship all orders in a timely manner, working diligently to ensure that your items are on their way to you as soon as possible.

Best For: Students and researchers in astrophysics focusing on star formation and interstellar phenomena
Focus: Theoretical and computational study of star formation and expanding ionized regions
Covers: Basic theory of star formation, physics of expanding HII regions, and numerical simulations linking massive stars to triggered star formation
Why It Matters: Provides a detailed theoretical framework combined with current simulations and observations to understand how massive stars influence the birth of other stars

"The Interstellar Medium, Expanding Nebulae and Triggered Star Formation" by Thomas G. Bisbas is a mathematics book and learning resource focused on Deep Sky & Solar System. Best for teachers, students, and readers looking for stronger mathematical understanding.

Topic: Deep Sky & Solar System

Author: Thomas G. Bisbas

Who this is for:

  • Teachers and classroom instructors
  • Students building subject mastery
  • Readers looking for practical learning support

Why this book matters: It stands out as a practical math resource that helps explain concepts, strengthen problem-solving, and support classroom or independent learning.

This brief brings together the theoretical aspects of star formation and ionized regions with the most up-to-date simulations and observations. Beginning with the basic theory of star formation, the physics of expanding HII regions is reviewed in detail and a discussion on how a massive star can give birth to tens or hundreds of other stars follows. The theoretical description of star formation is shown in simplified and state-of-the-art numerical simulations, describing in a more clear way how feedback from massive stars can trigger star and planet formation. This is also combined with spectacular images of nebulae taken by talented amateur astronomers. The latter is very likely to stimulate the reader to observe the structure of nebulae from a different point of view, and better understand the associated star formation therein.

AuthorThomas G. Bisbas
PublisherSpringer
Published2015-12-02
ISBN-139783319261409
BindingPaperback
LanguageEnglish
SubjectsScience
TopicDeep Sky & Solar System
SeriesSpringerbriefs in Astronomy

Format: Paperback

Language: English

Shop by collection

You might also like...